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基于电荷转移带边的温度诱导位移与热耦合协同作用的光学测温法。

Optical thermometry based on cooperation of temperature-induced shift of charge transfer band edge and thermal coupling.

作者信息

Zhou Shaoshuai, Duan Changkui, Yin Min, Liu Xiaoli, Han Shuo, Zhang Shoubao, Li Xiaoman

出版信息

Opt Express. 2018 Oct 15;26(21):27339-27345. doi: 10.1364/OE.26.027339.

Abstract

A novel optical thermometry is put forward, based on the cooperation of temperature-induced red shift of the charge transfer band (CTB) edge of the vanadates and thermal population of the thermally coupled energy levels (TCELs). Particularly, temperature-dependent CTB of Sm (Er) doped LuVO was investigated from 300 to 480 K. Then, under the excitation of 360 nm at which the excitation efficiency enhances with temperature due to the temperature induced red shift of the CTB edge, temperature-dependent emissions of the TCELs of Sm and Er were investigated. The results indicate that the emission from the upper-level in the TCELs exhibits a dramatic increase, along with the increase of temperature. High relative sensitivity of 4304/T was obtained, which is remarkably superior to the previous reported sensors, using the temperature-dependent fluorescence intensity ratio of TCELs. This suggests that the proposed strategy is a promising candidate for highly sensitive optical thermometry.

摘要

基于钒酸盐电荷转移带(CTB)边缘的温度诱导红移与热耦合能级(TCELs)的热布居的协同作用,提出了一种新型光学测温法。具体而言,研究了Sm(Er)掺杂LuVO在300至480 K范围内随温度变化的CTB。然后,在360 nm激发下,由于CTB边缘的温度诱导红移,激发效率随温度升高,研究了Sm和Er的TCELs随温度变化的发射。结果表明,随着温度升高,TCELs中上层能级的发射显著增加。获得了4304/T的高相对灵敏度,这明显优于先前报道的利用TCELs温度依赖荧光强度比的传感器。这表明所提出的策略是高灵敏度光学测温的一个有前景的候选方案。

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